并流沉淀法降低铜电解液中砷锑铋杂质离子的研究
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1.白银有色集团股份有限公司, 甘肃 白银 730900 ; 2.西北矿冶研究院, 甘肃 白银 730900 ;3.甘肃省有色金属冶炼新工艺及伴生稀散金属高效综合利用重点实验室, 甘肃 白银 730900

作者简介:

王军辉(1974—),男,本科,高级工程师,甘肃靖远,主要从事有色金属冶炼工艺的研发与管理。

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TF811;TF803.2+7

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甘肃省工业绿色低碳转型升级研究课题(GGLD-2019-28)


Study on removal of As, Sb and Bi impurity ions in copper electrolyte by counterflow precipitation method
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    摘要:

    铜电解液中的As、Sb、Bi离子含量是影响阴极铜质量的重要因素,现有的电解沉积法电耗高、铜损失量大,萃取方法和离子交换法存在液量大的缺陷。本文利用SO2还原As5+和Sb5+、H2O2氧化As3+和Sb3+调整化合价,促使砷锑铋形成沉淀阳极泥的原理,进行了二氧化硫和双氧水并流沉淀方法降低铜电解液中砷锑铋杂质离子的实验研究,结果表明:一定条件下,单独向铜电解液中通入SO2可以降低Sb离子浓度,但As、Bi离子浓度的变化幅度不大;单独向铜电解液中通入H2O2可以降低As、Sb离子浓度,但也会降低Cu、Bi离子浓度,严重时导致阳极钝化;在最佳条件下,H2O2采用滴加方式、加入量为4mL/L、SO2进气浓度为0.125g/L、搅拌速度为250r/min、反应温度为50℃,并流沉淀技术可以实现降低铜电解液中砷锑铋杂质离子的目的,且不会出现阳极钝化现象。

    Abstract:

    The content of As, Sb and Bi ions in the copper electrolyte is an important factor affecting the quality of the cathode copper. The existing electrolytic deposition method has high power consumption and large copper loss, and the extraction method and ion exchange method have the defect of large liquid volume. In this paper, using SO2 as reducing agent to reduce As5+ and Sb5+, H2O2 as an oxidant to oxidize As3+ and Sb3+, adjust the valence of arsenic, antimony and bismuth to form precipitated anode slime. An experimental study was carried out to reduce the impurity ions of arsenic, antimony and bismuth in copper electrolyte by counterflow precipitation of sulfur dioxide and hydrogen peroxide. The experiment results show that under certain conditions, the concentration of Sb ions can be reduced by pumping SO2 into the copper electrolyte alone, but the concentration of arsenic and bismuth ions does not change much; adding H2O2 into the copper electrolyte alone can reduce the concentration of arsenic and antimony ions, but it will also reduce the concentration of copper and bismuth ions, which may lead to anode passivation; the best experimental conditions is H2O2 added dropwise, the addition amount 4mL/L, the SO2 inlet concentration 0.125g/L, the stirring speed 250r/min, and the reaction temperature 50℃, under which counterflow precipitation technology can reduce the concentration of arsenic, antimony, bismuth impurity ions in copper electrolyte, and there will be no anode passivation.

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王军辉,姚夏妍,焦晓斌,等. 并流沉淀法降低铜电解液中砷锑铋杂质离子的研究[J]. 中国有色冶金, 2021, 50(3): 1-8.

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  • 收稿日期:2020-11-10
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  • 在线发布日期: 2025-12-24
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